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外周动脉疾病与连续血流左心室辅助装置:一项引人关注的补充分析可能有助于指导治疗。

Peripheral Artery Disease and Continuous Flow Left Ventricle Assist Device: An Engaging Complement Analysis May Help to Guide Treatment.

作者信息

Falletta Calogero, Pasta Salvatore, Raffa Giuseppe Maria, Crinò Francesca, Sciacca Sergio, Clemenza Francesco

机构信息

Cardiology Unit, Department for the Treatment and Study of Cardiothoracic Diseases and Cardiothoracic Transplantation, IRCCS - ISMETT (Istituto Mediterraneo per i Trapianti e Terapie ad Alta Specializzazione), Palermo, Italy.

Fondazione RiMED, Palermo, Italy.

出版信息

Artif Organs. 2018 Jul;42(7):756-759. doi: 10.1111/aor.13105. Epub 2018 Feb 13.

Abstract

Use of continuous flow left ventricle assist device (CF-LVAD) in advanced heart failure (HF) patients results in clinically relevant improvements in survival, functional capacity, and quality of life. Peripheral artery disease (PAD) can occur in patients with CF-LVAD due to the high rate of concomitance between risk factors for atherosclerosis and HF. Diagnosis of PAD can be difficult in the specific setting of a patient supported by this kind of device because of the marked alteration in waveform morphology and velocity created by the artificial physiology of an LVAD. We report the case of a 53-year-old man with HF secondary to ischemic cardiomyopathy supported by the HeartWare HVAD as bridge to transplant, who after the implant developed symptoms suggestive of PAD. We describe additional computational flow analysis for the study of PAD-related hemodynamic disturbances induced by a CF-LVAD. Flow simulations enhance the information of clinical image data, and may have an application in clinical investigations of the risk of hemodynamic disturbances induced by LVAD implantation.

摘要

在晚期心力衰竭(HF)患者中使用连续流左心室辅助装置(CF-LVAD)可在生存、功能能力和生活质量方面带来具有临床意义的改善。由于动脉粥样硬化风险因素与HF之间的高并发率,CF-LVAD患者可能会发生外周动脉疾病(PAD)。在这类装置支持的患者的特定情况下,由于LVAD的人工生理造成的波形形态和速度的明显改变,PAD的诊断可能会很困难。我们报告了一名53岁男性患者的病例,该患者因缺血性心肌病继发HF,由HeartWare HVAD作为移植桥梁进行支持,植入后出现提示PAD的症状。我们描述了用于研究CF-LVAD引起的与PAD相关的血流动力学紊乱的额外计算血流分析。血流模拟增强了临床图像数据的信息,并且可能在LVAD植入引起的血流动力学紊乱风险的临床研究中具有应用价值。

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